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首页> 外文期刊>Journal of Hydrodynamics >HYDRODYNAMIC OPTIMIZATION DESIGN OF LOW SOLIDITY VANED DIFFUSER FOR A CENTRIFUGAL PUMP USING GENETIC ALGORITHMS
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HYDRODYNAMIC OPTIMIZATION DESIGN OF LOW SOLIDITY VANED DIFFUSER FOR A CENTRIFUGAL PUMP USING GENETIC ALGORITHMS

机译:基于遗传算法的离心泵低固度叶片扩散器的动态优化设计。

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摘要

This paper presents a hydrodynamic redesign of the conventional vaned diffuser into the low solidity varied diffuser for the maximum static pressure recovery in a centrifugal pump. A Bezier curve representation for profile description was coupled with a blade-to-blade flow calculation and a real-coded genetic algorithm. A low solidity vaned diffuser of 0.89 in solidity was obtained through the present optimum design. Numerical analysis and experimental test were made to evaluate the hydrodynamic performance of the centrifugal pump with the designed low solidity vaned diffuser and original vaned diffuser. The obtained results demonstrate that the centrifugal pump with the optimized vaned diffuser has compact size compared with the original one while the performance requirements have been met.
机译:本文提出了将传统的叶片式扩压器的流体动力学设计,改成低密度变化的扩压器,以实现离心泵中最大的静压恢复。用于轮廓描述的贝塞尔曲线表示与叶片到叶片的流量计算和实数编码遗传算法相结合。通过本发明的最佳设计,获得了密度为0.89的低密度叶片式扩散器。进行了数值分析和实验测试,以评估设计的低密度叶片式扩散器和原始叶片式扩散器的离心泵的水动力性能。获得的结果表明,具有优化的叶片扩压器的离心泵与原始泵相比具有紧凑的尺寸,同时满足了性能要求。

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